首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Requirement of the galU Gene for Polysaccharide Production by and Pathogenicity and Growth In Planta of Xanthomonas citri subsp. citri
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Requirement of the galU Gene for Polysaccharide Production by and Pathogenicity and Growth In Planta of Xanthomonas citri subsp. citri

机译:galU基因对柑橘黄单胞菌亚种的多糖生产以及植物体内的致病性和生长的需求。柠檬

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摘要

Xanthomonas citri subsp. citri is the causal agent of citrus canker, which has a significant impact on citrus production. In this study, we characterized the galU gene of X. citri subsp. citri. Two galU mutants (F6 and D12) were identified in an X. citri subsp. citri EZ-Tn5 <R6Kγori/KAN-2> Tnp transposon library. Rescue cloning, sequence analysis, and Southern blot analysis indicated that both of these mutants had a single copy of the EZ-Tn5 transposon inserted in galU in the chromosome. Further study showed that galU was required for biosynthesis of extracellular polysaccharides (EPS; xanthan gum) and capsular polysaccharide (CPS) and biofilm formation. Mutation of galU resulted in a loss of pathogenicity for grapefruit. The loss of pathogenicity of a galU mutant resulted from its inability to grow in planta rather than from the effect on virulence genes. Quantitative reverse transcription-PCR assays indicated that mutation of galU did not impair the expression of key virulence genes, such as pthA of X. citri subsp. citri. Although D12 had a growth rate similar to that of the wild-type strain in nutrient broth, no D12 population became established in the intercellular spaces of citrus leaves. Coinoculation of a galU mutant with the wild-type strain did not promote growth of the galU mutant in planta. Defects in EPS and CPS production, pathogenicity, and growth in planta of the galU mutant were complemented to the wild-type level using plasmid pCGU2.1 containing an intact galU gene. These data indicate that the galU gene contributes to X. citri subsp. citri growth in intercellular spaces and is involved in EPS and CPS synthesis and biofilm formation.
机译:Xanthomonas citri subsp.。柠檬酸是柑橘溃疡病的病因,它对柑橘产量产生重大影响。在这项研究中,我们表征了X.citri亚种的galU基因。柠檬在X.citri亚种中鉴定了两个galU突变体(F6和D12)。柠檬EZ-Tn5 Tnp转座子文库。营救性克隆,序列分析和Southern印迹分析表明,这两个突变体均在染色体的galU中插入了EZ-Tn5转座子的单个拷贝。进一步的研究表明,galU是胞外多糖(EPS;黄原胶),荚膜多糖(CPS)和生物膜形成的生物合成所必需的。 galU的突变导致葡萄柚的致病性丧失。 galU突变体致病性的丧失是由于它无法在植物中生长,而不是由于对毒力基因的影响。定量逆转录-PCR分析表明,galU的突变不会损害关键毒力基因的表达,例如柠檬黄单胞菌亚种的pthA。 citri 。尽管D12在营养肉汤中具有与野生型菌株相似的生长速率,但是在柑橘叶片的细胞间空间中没有建立D12种群。将 galU 突变体与野生型菌株共同接种不会促进 galU 突变体在植物中的生长。使用包含完整的质粒pCGU2.1将 galU 突变体的EPS和CPS产量,致病性和植物中 的缺陷补充至野生型水平。 galU 基因。这些数据表明 galU 基因对 X有贡献。 citri 子子集。 citri 在细胞间隙生长,并参与EPS和CPS的合成以及生物膜的形成。

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